Title :
Time-dependent self-action of periodically modulated laser beams in resonant media
Author :
Derbov, Vladimir L. ; Serov, Vladislav V. ; Plastun, Inna L. ; Shilov, Sergey V.
Author_Institution :
Saratov State Univ., Russia
Abstract :
We study the self-action of an amplitude-modulated beam in a two-level saturable absorbing medium. We also consider the radial quadratic dependence of the linear refraction index to apply the results to doped waveguides. As the modulation period approaches the relaxation times, the medium response is no more instantaneous, so that one should solve the full set of Maxwell-Bloch equations. We propose a second-order scheme with the Gauss-Laguerre transformation of the transverse field pattern. A simplified approach based on the synchronous interaction approximation is used for thin layers. We analyze the transient behavior of the medium response and its manifestation in the modulation of the beam diffracting after a thin saturable absorber. Nonlinear distortions of the modulation signal passed through a doped waveguide appear to be unexpectedly small compared with those of the local polarization and population difference.
Keywords :
laser beams; nonlinear distortion; optical modulation; optical saturable absorption; optical self-focusing; optical waveguide theory; refractive index; transient response; Gauss-Laguerre transformation; Maxwell-Bloch equations; amplitude-modulated beam; beam modulation; doped waveguides; linear refraction index; local polarization; modulation period; near-resonance self-focusing; nonlinear distortions; periodically modulated laser beams; population difference; radial quadratic dependence; relaxation times; resonant media; second-order scheme; synchronous interaction approximation; thin layers; time-dependent self-action; transient behavior; transverse field pattern; two-level saturable absorbing medium; Diffraction; Gaussian processes; Laser beams; Maxwell equations; Optical modulation; Optical refraction; Resonance; Time factors; Transient analysis; Waveguide lasers;
Conference_Titel :
Mathematical Methods in Electromagnetic Theory, 2002. MMET '02. 2002 International Conference on
Conference_Location :
Kiev, Ukraine
Print_ISBN :
0-7803-7391-X
DOI :
10.1109/MMET.2002.1106835